Zif-8 based polysulfone hollow fiber membranes for natural gas purification

Mixed matrix membranes (MMMs) have received worldwide attention for natural gas purification due to their superior performance in terms of permeability and selectivity. The zeolitic imidazole framework-8 (ZIF-8) blended polysulfone (PSf) membranes have been fabricated for natural gas purification. Z...

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Main Authors: Khan, I. U., Othman, M. H. D., Jilani, A., Ismail, A. F., Hashim, H., Jaafar, J., Zulhairun, A. K., Rahman, M. A., Rehman, G. U.
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Published: Elsevier Ltd. 2020
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Online Access:http://eprints.utm.my/id/eprint/86637/
https://dx.doi.org/10.1016/j.polymertesting.2020.106415
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spelling my.utm.866372020-09-30T09:01:27Z http://eprints.utm.my/id/eprint/86637/ Zif-8 based polysulfone hollow fiber membranes for natural gas purification Khan, I. U. Othman, M. H. D. Jilani, A. Ismail, A. F. Hashim, H. Jaafar, J. Zulhairun, A. K. Rahman, M. A. Rehman, G. U. TP Chemical technology Mixed matrix membranes (MMMs) have received worldwide attention for natural gas purification due to their superior performance in terms of permeability and selectivity. The zeolitic imidazole framework-8 (ZIF-8) blended polysulfone (PSf) membranes have been fabricated for natural gas purification. ZIF-8 was selected due to its low cost, remarkable thermal and chemical stabilities, and tunable microporous structure. The neat PSf hollow fiber membrane and mixed matrix hollow fiber membranes incorporated with the various ZIF-8 loadings up to 1.25% were fabricated. The prepared membranes were evaluated using field emission scanning electron microscopy (FESEM), thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), Fourier transform infrared spectroscopy (FTIR), atomic force microscopy (AFM), and gas separation performance. The low loading of ZIF-8 nanoparticles to the MMM improved thermal stability and glass transition temperature and yielded low surface roughness. MMMs were tested using pure gases with a significant improvement of 36% in CO2 permeability and 28% in CO2/CH4 selectivity compared to the neat membrane. However, the high ZIF-8 loading reduced the separation performances. Moreover, CO2/CH4 selectivity decreased at elevated pressure (8 and 10 bar) due to CO2-induced plasticization. Previously, the incorporation of ZIF-8 particles has primarily been subjected to the fabrication of flat sheet membranes, whereas this work focused on hollow fiber membranes which are rarely investigated. Hence, the promising results obtained at low feed pressure in this study demonstrated the potential of ZIF-8 based hollow fiber membrane for natural gas purification. Elsevier Ltd. 2020-04 Article PeerReviewed Khan, I. U. and Othman, M. H. D. and Jilani, A. and Ismail, A. F. and Hashim, H. and Jaafar, J. and Zulhairun, A. K. and Rahman, M. A. and Rehman, G. U. (2020) Zif-8 based polysulfone hollow fiber membranes for natural gas purification. Polymer Testing, 84 . ISSN 0142-9418 https://dx.doi.org/10.1016/j.polymertesting.2020.106415 DOI:10.1016/j.polymertesting.2020.106415
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Khan, I. U.
Othman, M. H. D.
Jilani, A.
Ismail, A. F.
Hashim, H.
Jaafar, J.
Zulhairun, A. K.
Rahman, M. A.
Rehman, G. U.
Zif-8 based polysulfone hollow fiber membranes for natural gas purification
description Mixed matrix membranes (MMMs) have received worldwide attention for natural gas purification due to their superior performance in terms of permeability and selectivity. The zeolitic imidazole framework-8 (ZIF-8) blended polysulfone (PSf) membranes have been fabricated for natural gas purification. ZIF-8 was selected due to its low cost, remarkable thermal and chemical stabilities, and tunable microporous structure. The neat PSf hollow fiber membrane and mixed matrix hollow fiber membranes incorporated with the various ZIF-8 loadings up to 1.25% were fabricated. The prepared membranes were evaluated using field emission scanning electron microscopy (FESEM), thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), Fourier transform infrared spectroscopy (FTIR), atomic force microscopy (AFM), and gas separation performance. The low loading of ZIF-8 nanoparticles to the MMM improved thermal stability and glass transition temperature and yielded low surface roughness. MMMs were tested using pure gases with a significant improvement of 36% in CO2 permeability and 28% in CO2/CH4 selectivity compared to the neat membrane. However, the high ZIF-8 loading reduced the separation performances. Moreover, CO2/CH4 selectivity decreased at elevated pressure (8 and 10 bar) due to CO2-induced plasticization. Previously, the incorporation of ZIF-8 particles has primarily been subjected to the fabrication of flat sheet membranes, whereas this work focused on hollow fiber membranes which are rarely investigated. Hence, the promising results obtained at low feed pressure in this study demonstrated the potential of ZIF-8 based hollow fiber membrane for natural gas purification.
format Article
author Khan, I. U.
Othman, M. H. D.
Jilani, A.
Ismail, A. F.
Hashim, H.
Jaafar, J.
Zulhairun, A. K.
Rahman, M. A.
Rehman, G. U.
author_facet Khan, I. U.
Othman, M. H. D.
Jilani, A.
Ismail, A. F.
Hashim, H.
Jaafar, J.
Zulhairun, A. K.
Rahman, M. A.
Rehman, G. U.
author_sort Khan, I. U.
title Zif-8 based polysulfone hollow fiber membranes for natural gas purification
title_short Zif-8 based polysulfone hollow fiber membranes for natural gas purification
title_full Zif-8 based polysulfone hollow fiber membranes for natural gas purification
title_fullStr Zif-8 based polysulfone hollow fiber membranes for natural gas purification
title_full_unstemmed Zif-8 based polysulfone hollow fiber membranes for natural gas purification
title_sort zif-8 based polysulfone hollow fiber membranes for natural gas purification
publisher Elsevier Ltd.
publishDate 2020
url http://eprints.utm.my/id/eprint/86637/
https://dx.doi.org/10.1016/j.polymertesting.2020.106415
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score 13.159267